Here is the start of a lengthly explaination, that works to elaborate how fields work.:
As told before, an electron's spin -- works to determine its magnetic field. This is because the magnetic field of an electron is normal to its electric field, and an electric field is based on the angular momentum of the given electron. Angular momentum is based on the directoral impetus of the electron in any series of locants -- as implied before. In order for something to spin, the phenomenon has to go around. That's what spinning is. This means that the surface area of any object that spins MUST have radial translation after every discrete metric in which that object does indeed spin. Whenever something exists, it exists in some sort of space. Anything that exists in space, is touching something -- at every spot in which it exists. Whenever there is touch, there is tangency. So, anything that exists has some sort of tangency. The condition of tangency is normalcy. This is because, whenever there's a tangent point -- there is a norm vector. So, anything that exists, has some sort of normalcy -- that is associated with whatever topological surface that you may wish to discuss in a respective case scenario. Normalcy may not always be associated with Real Space, yet it is always associated with some sort of medium -- thru which point particles or indices of norm-state-projections may be relayed, or at least temporarily transferred. Whenever radial motion happens -- there is always at least a potential of the spinning of either the object in radial motion OR the spinning of the indices that the said object works here to translate. Radial motion that differentiates homotopically -- thru a metric -- Always involves actual spinning. Let's say -- metaphorically -- that you are are a small point particle in time and space. You are on the surface of a smooth paraboloid. The paraboloid spins. Remember, you are touching the outer surface of the said paraboloid. As the paraboloid spins, you spin along with it. (Cliffhanger)
I will continue with the suspense later! To Be Continued!!! Sam Roach.
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